IP Library Granted Patent US 8,854,275
Granted Patent B2
US 8,854,275 · App. 13/431,746 · Granted Oct 7, 2014

Antenna apparatus and method for reducing background noise and increasing reception sensitivity

Inventors: Robert L. Doneker (Portland, OR); Kent G. R. Thompson (Portland, OR)
Assignee: Tangitek, LLC
H01Q5/0055H01Q17/005H01Q1/526
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,854,275
App. No.
13/431,746
Granted
Oct 7, 2014
Kind
B2
Abstract

An antenna apparatus includes an electrically conductive section having peripheral edges, an antenna element coupled to the electrically conductive section, which transmits or receives electromagnetic signals, and an electromagnetic absorbing carbon material component. The carbon material component is generally disposed adjacent to the electrically conductive section, and includes a border region extending beyond the peripheral edges of the electrically conductive section. The carbon material component can be constructed of a carbon fiber fabric in which the carbon fibers are arranged to increase the effective signal to noise ratio of the antenna apparatus and enhance antenna performance without increasing the baseline power consumption level. The carbon fibers can be coated with silicone to insulate them externally while enhancing their lengthwise conductivity.

Claims (38)

1. An antenna apparatus, comprising:

an electrically conductive section including a peripheral edge;

an antenna element coupled to the electrically conductive section and structured to transmit or receive one or more electromagnetic signals;

a carbon material component disposed adjacent to the electrically conductive section, the carbon material component including a border region extending beyond the peripheral edge of the electrically conductive section;

wherein the border region of the carbon material component extends beyond the peripheral edge of the electrically conductive section by at least a distance of nλ, divided by 4 (nλ/4), where n=1, 2, 4 or 8, and wherein λ corresponds to the maximum wavelength of the one or more electromagnetic signals capable of being transmitted or received using the antenna element.

2. The antenna apparatus of claim 1 , wherein the carbon material component is structured to reduce background interference of the one or more electromagnetic signals transmitted or received by the antenna element.

3. The antenna apparatus of claim 1 , wherein a distance between a surface of the carbon material component and the electrically conductive section is less than or equal to λ divided by 4n (λ/4n) where n=1, 2, 4 or 8).

4. The antenna apparatus of claim 3 , wherein the carbon material component is disposed directly adjacent to and in contact with the electrically conductive section.

5. The antenna apparatus of claim 1 , wherein the carbon material component includes insulated carbon fiber fabric.

6. The antenna apparatus of claim 5 , wherein the insulated carbon fiber fabric has a sheet resistance along the length of the carbon fiber of less than or equal to 1 ohm per square (1Ω/□).

7. The antenna apparatus of claim 1 , wherein the carbon material component is structured to increase the effective signal to noise ratio of the antenna apparatus.

8. The antenna apparatus of claim 1 , wherein the carbon material component is structured to increase the reception range of the one or more electromagnetic signals by up to 1.4 times.

9. The antenna apparatus of claim 1 , wherein the carbon material component is encapsulated with an insulation layer to electrically isolate the carbon material component from electrical contact with any other element of the antenna apparatus, and to electrically isolate the carbon material component from earth ground.

10. The antenna apparatus of claim 1 , wherein:

the electrically conductive section is a substantially planar antenna ground plane having at least a width dimension and a length dimension;

the antenna element is substantially helical and arranged at a normal relative to the antenna ground plane; and

the carbon material component is substantially planar and arranged parallel to the antenna ground plane.

11. The antenna apparatus of claim 1 , wherein:

the electrically conductive section includes a substantially cylindrical conductor;

the antenna element is a monopole antenna coupled to the cylindrical conductor and arranged to receive the one or more electromagnetic signals;

the carbon material component includes a substantially cylindrical cross section of the carbon material inside but insulated from the electrically conductive section; and

the border region of the carbon material component, which includes the substantially cylindrical cross section, extends lengthwise beyond the peripheral edge of the cylindrical conductor.

12. The antenna apparatus of claim 1 , wherein the carbon material component includes carbon fiber fabric comprising carbon fibers wherein the carbon fibers are coated with insulative silicone.

13. An antenna apparatus, comprising:

an electrically conductive section including a peripheral edge;

an antenna element coupled to the electrically conductive section and structured to transmit or receive one or more electromagnetic signals;

a carbon material component disposed adjacent to the electrically conductive section, the carbon material component including a border region extending beyond the peripheral edge of the electrically conductive section;

wherein the border region of the carbon material component extends beyond the peripheral edge of the electrically conductive section by at least a distance of nλ divided by 4 (nλ/4), where n=1, 2, 4 or 8, and wherein λ corresponds to the maximum wavelength of the one or more electromagnetic signals capable of being transmitted or received using the antenna element;

wherein the carbon material component includes carbon fiber fabric comprising carbon fibers wherein the carbon fibers are coated with insulative silicone;

wherein the electrically conductive section is formed as a fabric disposed on the coated carbon fiber fabric.

14. An antenna apparatus, comprising:

an electrically conductive section including a peripheral edge;

an antenna element coupled to the electrically conductive section and structured to transmit or receive one or more electromagnetic signals;

a carbon material component disposed adjacent to the electrically conductive section, the carbon material component including a border region extending beyond the peripheral edge of the electrically conductive section;

wherein the border region of the carbon material component extends beyond the peripheral edge of the electrically conductive section by at least a distance of nλ divided by 4 (nλ/4), where n=1, 2, 4 or 8, and wherein λ corresponds to the maximum wavelength of the one or more electromagnetic signals capable of being transmitted or received using the antenna element;

wherein the carbon material component includes carbon fiber fabric comprising carbon fibers wherein the carbon fibers are coated with insulative silicone;

wherein the electrically conductive section is formed as a fabric disposed on the coated carbon fiber fabric;

wherein two layers of the electrically conductive section sandwich a single layer of the coated carbon fiber fabric between them.

Assignments (2)
SECURITY INTEREST Recorded Dec 29, 2014
From: TANGITEK, LLC; DONEKER, ROBERT L.
To: MARGER JOHNSON & MCCOLLOM, P.C.
Reel/Frame 034595/0656 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2012
From: DONEKER, ROBERT L.; THOMPSON, KENT G.R.
To: TANGITEK, LLC
Reel/Frame 028259/0936 →
Continuity (2)
Continuation In Part 13039981 · Mar 3, 2011
Related Publication 20120229358A1 · Sep 13, 2012